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Autosomal Trisomy and Triploidy Are Corrected During Female Meiosis in Caenorhabditis elegans

机译:秀丽隐杆线虫女性减数分裂期间常染色体三体和三倍体得到纠正。

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摘要

Trisomy and triploidy, defined as the presence of a third copy of one or all chromosomes, respectively, are deleterious in many species including humans. Previous studies have demonstrated that Caenorhabditis elegans with a third copy of the X chromosome are viable and fertile. However, the extra X chromosome was shown to preferentially segregate into the first polar body during oocyte meiosis to produce a higher frequency of euploid offspring than would be generated by random segregation. Here, we demonstrate that extra autosomes are preferentially eliminated by triploid C. elegans and trisomy IV C. elegans. Live imaging of anaphase-lagging chromosomes and analysis of staining of metaphase II spindles revealed that, in triploids, some univalent chromosomes do not lose cohesion and preferentially segregate intact into the first polar body during anaphase I, whereas other autosomes segregate chromatids equationally at anaphase I and eliminate some of the resulting single chromatids during anaphase II. We also demonstrate asymmetry in the anaphase spindle, which may contribute to the asymmetric segregation. This study reveals a pathway that allows aneuploid parents to produce euploid offspring at higher than random frequency.
机译:三体和三倍体分别定义为一个或所有染色体的第三拷贝的存在,在包括人类在内的许多物种中都是有害的。先前的研究表明,带有X染色体第三拷贝的秀丽隐杆线虫是可行的和可育的。然而,额外的X染色体显示出在卵母细胞减数分裂时优先分离到第一极体中,产生的整倍体后代的频率要比随机分离产生的高。在这里,我们证明了多余的常染色体优先被三倍体线虫和三体性四线虫消除。滞后期染色体的实时成像和中期II纺锤体染色的分析表明,在三倍体中,某些单价染色体不会失去凝聚力,并且在后期I时优先完整地分离到第一个极体中,而其他常染色体在染色体I时等式地分离了染色质。并在后期II消除一些所得的染色单体。我们还证明了后期纺锤体中的不对称性,这可能导致不对称分离。这项研究揭示了允许非整倍体父母以高于随机频率产生整倍体后代的途径。

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